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储能系统技术
★ 5.0
通风耦合高能量密度显热储能系统研究
Investigation of ventilation-coupled high energy density sensible thermal energy storage
| 作者 | Nelson James · Ransisi Huang · Jason Woods · Eric Kozuba |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 387 卷 |
| 技术分类 | 储能系统技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Thermal energy storage using antifreeze liquid tank ventilation air and air-to-water heat pump. |
语言:
中文摘要
低成本储能将在支持能源行业脱碳方面发挥重要作用。本文提出了一种用于建筑的新型显热储能方法,该方法利用装有防冻液的储罐在机械通风系统中加热室外空气。如果将液体加热至足够高的温度,在寒冷气候下的放电过程中,其温度波动可能接近100°C。由于显热储能系统的能量密度与系统温差成正比,因此该概念相比其他应用于建筑领域的液态显热储能装置具有实现更高能量密度的潜力。本文建立了一维数值模型,并采用30 wt%(质量分数)乙酸钾水溶液作为防冻液进行了实验验证。在实验室条件下,使用商用热水箱实现了47.0千瓦时每立方米(kWh/m³)的能量密度,测得材料级能量密度约为74.7 kWh/m³。设计上的进一步优化有望进一步提升该储能系统的能量密度。由于系统结构相对简单,与通风系统耦合的显热储能技术有望成为一种易于部署、成本低廉的建筑用储能解决方案。
English Abstract
Abstract Low-cost energy storage will play an important role in supporting the decarbonization of the energy sector. A novel approach to thermal energy storage for buildings is proposed, in which a tank of antifreeze liquid can be used to heat outdoor air in mechanical ventilation systems . If heated to a high enough temperature, the fluid can potentially undergo temperature swings of nearly 100 °C during discharge in cold climates. Because the energy density of sensible storage systems scales proportionally to the system temperature change, this concept has the potential to offer higher energy densities than other liquid-based sensible storage devices used in building applications. A one-dimensional numerical model of the storage system was developed and experimentally validated using 30 wt% (wt%) potassium acetate as an aqueous antifreeze solution. Using a commercial hot water tank , energy densities of 47.0 kW-hour per cubic meter (kWh/m 3 ) were demonstrated in a laboratory setting. Material energy densities of approximately 74.7 (kWh/m 3 ) were measured. Design improvements may boost this energy storage density even further. Because of the system's relative simplicity, ventilation-coupled sensible storage has the potential to be an easily deployable, low-cost energy storage solution for building systems.
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SunView 深度解读
该建筑显热储能技术对阳光电源ST系列储能系统具有重要启示价值。其高能量密度(74.7kWh/m³)和低成本特性,可与PowerTitan储能方案结合,应用于建筑微网场景。通风耦合设计理念可启发我们开发建筑一体化储能产品,将PCS与暖通系统深度融合。该技术的温度大幅波动特性(100°C)对储能热管理系统设计有借鉴意义,可优化ST系列液冷方案。建议探索该技术与光储充一体化系统的协同,提升建筑能源自给率,拓展iSolarCloud平台在建筑能源管理的应用场景。